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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Development of a quantitative intracranial vascular features extraction tool on 3 D D MRA MRA using semiautomated open‐curve active contour vessel tracing
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Development of a quantitative intracranial vascular features extraction tool on 3 D D MRA MRA using semiautomated open‐curve active contour vessel tracing

机译:3 D D MRA MRA的定量颅内血管特性提取工具使用半动物开口曲线有源轮廓追踪

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Purpose To develop a quantitative intracranial artery measurement technique to extract comprehensive artery features from time‐of‐flight MR angiography (MRA). Methods By semiautomatically tracing arteries based on an open‐curve active contour model in a graphical user interface, 12 basic morphometric features and 16 basic intensity features for each artery were identified. Arteries were then classified as one of 24 types using prediction from a probability model. Based on the anatomical structures, features were integrated within 34 vascular groups for regional features of vascular trees. Eight 3D MRA acquisitions with intracranial atherosclerosis were assessed to validate this technique. Results Arterial tracings were validated by an experienced neuroradiologist who checked agreement at bifurcation and stenosis locations. This technique achieved 94% sensitivity and 85% positive predictive values (PPV) for bifurcations, and 85% sensitivity and PPV for stenosis. Up to 1,456 features, such as length, volume, and averaged signal intensity for each artery, as well as vascular group in each of the MRA images, could be extracted to comprehensively reflect characteristics, distribution, and connectivity of arteries. Length for the M1 segment of the middle cerebral artery extracted by this technique was compared with reviewer‐measured results, and the intraclass correlation coefficient was 0.97. Conclusion A semiautomated quantitative method to trace, label, and measure intracranial arteries from 3D‐MRA was developed and validated. This technique can be used to facilitate quantitative intracranial vascular research, such as studying cerebrovascular adaptation to aging and disease conditions. Magn Reson Med 79:3229–3238, 2018. ? 2017 International Society for Magnetic Resonance in Medicine.
机译:目的,开发定量颅内动脉测量技术,从飞行时间MR血管造影(MRA)中提取综合动脉特征。方法通过基于图形用户界面中的开放曲线有源轮廓模型的半剖视跟踪动脉,识别每个动脉的12个基本的形态学特征和16个基本强度特征。然后使用从概率模型预测被归类为24种类型之一的动脉。基于解剖结构,在34个血管群中纳入血管树的区域特征。评估八维MRA采集与颅内动脉粥样硬化的收集以验证该技术。结果由经验丰富的神经皮层验证的动脉追踪,他们在分叉和狭窄地点签订了一致。该技术实现了94%的敏感性和85%的阳性预测值(PPV),用于分叉和85%的敏感性和PPV用于狭窄。可以提取高达1,456个特征,例如每个动脉的长度,体积和平均信号强度,以及每个MRA图像中的血管组,以全面地反映动脉的特征,分布和连接性。将通过该技术提取的中间脑动脉的M1段的长度与审阅者测量结果进行了比较,并且腹部相关系数为0.97。结论三维MAR追踪,标签和测量3D-MRA颅内动脉的半归类定量方法进行了开发和验证。该技术可用于促进定量颅内血管研究,例如研究脑血管适应衰老和疾病条件。 Magn Reson Med 79:3229-3238,2018。? 2017年医学磁共振的国际社会。

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